Ti-6Al-4V sheets, 3.2-mm in thickness, were butt welded using a continuous wave 4 kW Nd:YAG laser welding system. The effect of two main process parameters, laser power and welding speed, on the joint integrity was characterized in terms of the joint geometry, defects, microstructure, hardness, and tensile properties. In particular, a digital image correlation technique was used to determine the local tensile properties of the welds. It was determined that a wide range of heat inputs can be used to fully penetrate the Ti-6Al-4V butt joints during laser welding. At high laser power levels, however, significant defects such as underfill and porosity, can occur and cause marked degradation in the joint integrity and performance. At low welding...
International audienceComponent parts made of a commercial two-phase α + β Ti-6Al-4V alloy can be as...
Laser welding technique has recently spread quickly thanks to its numerous advantages compared to tr...
AbstractComponent parts made of a commercial two-phase α + β Ti-6Al-4V alloy can be assembled by Nd:...
The influence of welding speed and laser power on weld quality of 1.6 mm thick Ti-6Al-4V sheets auto...
Ti-6Al-4V is an alloy that is increasingly used in aeronautics due to its high mechanical properties...
In this study, the weldability of 5.1-mm thick Ti-6Al-4V sheets in the mill-annealed condition was i...
Ti-5Al-5V-5Mo-3Cr butt joints were welded using a 4 kW continuous wave Nd:YAG laser. The effect of w...
Annealed Ti\u20136Al\u20134V alloy sheets with 1 and 2 mm thickness are welded using a 4 kW Nd:YAG l...
The effects of postweld heat treatment (PWHT) on 3.2-mm- and 5.1-mm-thick Ti-6Al-4V butt joints weld...
Owing to the high specific strength and excellent corrosion resistance, Ti-6Al-4V has been widely ap...
Development of high power laser beams with increasing beam quality and decreasing purchase cost lead...
Laser welding has been increasingly utilized to manufacture a variety of components thanks to its hi...
The effects of postweld heat treatment (PWHT) on 3.2-mm- and 5.1-mm-thick Ti-6Al-4V butt joints weld...
Titanium and their alloys have high strength to weight ratio, good corrosion resistance and high mel...
International audienceComponent parts made of a commercial two-phase α + β Ti-6Al-4V alloy can be as...
Laser welding technique has recently spread quickly thanks to its numerous advantages compared to tr...
AbstractComponent parts made of a commercial two-phase α + β Ti-6Al-4V alloy can be assembled by Nd:...
The influence of welding speed and laser power on weld quality of 1.6 mm thick Ti-6Al-4V sheets auto...
Ti-6Al-4V is an alloy that is increasingly used in aeronautics due to its high mechanical properties...
In this study, the weldability of 5.1-mm thick Ti-6Al-4V sheets in the mill-annealed condition was i...
Ti-5Al-5V-5Mo-3Cr butt joints were welded using a 4 kW continuous wave Nd:YAG laser. The effect of w...
Annealed Ti\u20136Al\u20134V alloy sheets with 1 and 2 mm thickness are welded using a 4 kW Nd:YAG l...
The effects of postweld heat treatment (PWHT) on 3.2-mm- and 5.1-mm-thick Ti-6Al-4V butt joints weld...
Owing to the high specific strength and excellent corrosion resistance, Ti-6Al-4V has been widely ap...
Development of high power laser beams with increasing beam quality and decreasing purchase cost lead...
Laser welding has been increasingly utilized to manufacture a variety of components thanks to its hi...
The effects of postweld heat treatment (PWHT) on 3.2-mm- and 5.1-mm-thick Ti-6Al-4V butt joints weld...
Titanium and their alloys have high strength to weight ratio, good corrosion resistance and high mel...
International audienceComponent parts made of a commercial two-phase α + β Ti-6Al-4V alloy can be as...
Laser welding technique has recently spread quickly thanks to its numerous advantages compared to tr...
AbstractComponent parts made of a commercial two-phase α + β Ti-6Al-4V alloy can be assembled by Nd:...